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利用小家鼠杂交区评估四肢骨长度的相关性和遗传结构。

Using the Mus musculus hybrid zone to assess covariation and genetic architecture of limb bone lengths.

机构信息

Max-Planck Institute for Evolutionary Biology, Plön, Germany.

Department of Biology and Biochemistry, Milner Centre for Evolution, University of Bath, Bath, UK.

出版信息

Mol Ecol Resour. 2018 Jul;18(4):908-921. doi: 10.1111/1755-0998.12776. Epub 2018 Apr 10.

DOI:10.1111/1755-0998.12776
PMID:29520982
Abstract

Two subspecies of the house mouse, Mus musculus domesticus and Mus musculus musculus, meet in a narrow contact zone across Europe. Mice in the hybrid zone are highly admixed, representing the full range of mixed ancestry from the two subspecies. Given the distinct morphologies of these subspecies, these natural hybrids can be used for genomewide association mapping at sufficiently high resolution to directly infer candidate genes. We focus here on limb bone length differences, which is of special interest for understanding the evolution of developmentally correlated traits. We used 172 first-generation descendants of wild-caught mice from the hybrid zone to measure the length of stylopod (humerus/femur), zeugopod (ulna/tibia) and autopod (metacarpal/metatarsal) elements in skeletal CT scans. We find phenotypic covariation between limb elements in the hybrids similar to patterns previously described in Mus musculus domesticus inbred strains, suggesting that the hybrid genotypes do not influence the covariation pattern in a major way. Mapping was performed using 143,592 SNPs and identified several genomic regions associated with length differences in each bone. Bone length was found to be highly polygenic. None of the candidate regions include the canonical genes known to control embryonic limb development. Instead, we are able to identify candidate genes with known roles in osteoblast differentiation and bone structure determination, as well as recently evolved genes of, as yet, unknown function.

摘要

家鼠有两个亚种,即 Mus musculus domesticus 和 Mus musculus musculus,它们在欧洲的一个狭窄接触区内相遇。杂种区内的老鼠高度混合,代表了来自这两个亚种的混合血统的全部范围。鉴于这些亚种的明显形态,这些自然杂种可以用于全基因组关联图谱绘制,分辨率足够高,可以直接推断候选基因。我们在这里关注肢体骨骼长度的差异,这对于理解发育相关特征的进化特别有意义。我们使用了 172 只来自杂交区的野生捕获老鼠的第一代后代,在骨骼 CT 扫描中测量了肢骨(肱骨/股骨)、中轴骨(尺骨/胫骨)和附肢骨(掌骨/跖骨)的长度。我们发现杂种中的肢体元素之间存在表型协变,与 Mus musculus domesticus 近交系中以前描述的模式相似,这表明杂种基因型不会以主要方式影响协变模式。使用 143,592 个 SNP 进行了映射,并鉴定了与每个骨骼长度差异相关的几个基因组区域。骨骼长度被发现高度多基因。候选区域中没有一个包括已知控制胚胎肢体发育的经典基因。相反,我们能够鉴定出已知在成骨细胞分化和骨骼结构决定中起作用的候选基因,以及最近进化的、功能未知的基因。

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